• DocumentCode
    34912
  • Title

    Ability of Low-Cost Force-Feedback Device to Influence Postural Stability

  • Author

    Baud-Bovy, Gabriel ; Tatti, Fabio ; Borghese, Nunzio A.

  • Author_Institution
    Robot., Brain & Cognitive Sci. Dept., Ist. Italiano di Tecnol., Genoa, Italy
  • Volume
    8
  • Issue
    2
  • fYear
    2015
  • fDate
    April-June 1 2015
  • Firstpage
    130
  • Lastpage
    139
  • Abstract
    Low-cost gaming technology offers promising devices for the rehabilitation of stroke patients at home. While several attempts have been made to use low-cost motion tracking devices (Kinect) or balance boards (Wii Board), the potential of low-cost haptic devices has yet to be explored in this context. The objective of this study was to investigate whether it is possible to influence postural stability with a low-cost device despite its technical limitations, and to explore the most promising modes of haptic interaction to increase and decrease postural stability. Two groups of younger subjects used a high-end (Omega.3) and a low-cost (Falcon) device respectively. A third group of older subjects used the Falcon. We show that light touch contact with the device improves stability, whereas the force tasks decrease it. The effects of the different tasks are consistent in the two age groups. Although there are differences in the participants´ interaction with the two devices, the effect of the devices on postural stability is comparable. We conclude that a low-cost haptic device can be used to increase or decrease postural stability of healthy subjects with an age similar to that of typical stroke patients, in a safe and controllable way.
  • Keywords
    force feedback; haptic interfaces; human computer interaction; medical computing; patient rehabilitation; Falcon; Omega.3; haptic interaction; high-end device; light touch contact; low-cost device; low-cost force feedback device; low-cost gaming technology; low-cost haptic devices; postural stability; stroke patient rehabilitation; Force; Haptic interfaces; Production; Stability criteria; Trajectory; Visualization; Force-feedback device; Human-computer interaction; Postural stability; Rehabilitation; human-computer interaction; postural stability; rehabilitation;
  • fLanguage
    English
  • Journal_Title
    Haptics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1939-1412
  • Type

    jour

  • DOI
    10.1109/TOH.2014.2369057
  • Filename
    6951460